MoviTHERM irNDT Non-destructive Testing

C-CheckIR

Mobile irNDT Solution for Carbon Composites

C-CheckIR

C-CheckIR System Image

The portable C-CheckIR system enables you to inspect a wide range of materials with active thermography. The system achieves precise and reliable measurements and is ideal for inspecting composite materials like glass- or carbon-fiber reinforced plastics (GRP/CFRP).

C-CheckIR is easy to handle and requires minimal training. The entire inspection head is mounted on a lightweight support frame equipped with vacuum suction feet. This design permits positioning of the system over a wide variety of surfaces.

C-CheckIR Features

The Portable Solution C-CheckIR for Non-Destructive Testing with Active Thermography

  • Suitable for Aerospace, Automotive Wind Energy Plants, Maritime, and more
  • Ideal for Inspection of Composite Materials like GRP/CFRP
  • Contactless Non-Destructive Testing (NDT)
  • Large Inspection Area
  • Compact Design for Mobile Use
  • Touch-Screen with Intuitive User-Interface

C-CheckIR Benefits

NON-CONTACT DEFECT DETECTION

Active thermography reveals the most subtle flaws and defects that are visibly undetectable.

MOBILE IN-FIELD irNDT INSPECTION

Ideal Solution for in-field Inspection of Composites and other Materials.

irNDT Made Easy

Complex analysis technology is simplified for dependable inspection results.

How does C-CheckIR work?

C-CheckIR works by means of active thermography. The Sensor-Head stimulates the test area with an optical excitation source (halogen lamp). Then, the system’s software analyzes, from a sequence of thermal images, the heat-flow over time, generating a result image that shows the internal structure of the material

C-CheckIR Non-destructive Testing principal

C-CheckIR – Technical Specifications

TESTING UNIT

General
Inspection Area 430 x 340 mm / 17 x 13 in
Operating Distance 400 mm / 16 in
Power Requirements 230 V AC, 2.3kW / 115 V AC, 1.9kW
Power Cable 7 m / 23 ft length
Weight (device) 6 kg / 13.2 lbs
Weight (device & case) 20.5 kg / 45 lbs
Infrared Camera
Available Resolutions 320 x 256 or 640 x 512
Image Rate 30 Hz / 60 Hz
Thermal Sensitivity < 30 mK @ 30°C
Excitation Source
2.2 kW @ 230 V / 1.8 kW @ 115 V (Extendable with Second Source)
Fixture Tool
Operating Pressure 5-7 bar / 72.5-116 psi

CONTROL UNIT

Tablet PC
Display 13” Multi-Touch Screen
Operating System Windows 10
Data Storage 128 GB
Software irNDT-Mobile
Analysis Software for Pulse/Transient Measurement, optional Lock-In Evaluation
Synchronization of Infrared Camera and Excitation Source
Graphical User-Interface with Touchscreen for Intuitive Handling

OPTIONS

Available Test Kit Versions
C-CheckIR Professional
C-CheckIR Airbus-Kit for NTM 55-40-50
Additional Equipment
Univeral Tripod Mount
Second Excitation Source
Software Analysis Modules for Non-Destructive Evaluation

*Specifications subject to change without notice. 11/2021

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Infrared Non-destructive Testing Guide

Download our Starter Guide for Infrared Non-Destructive Testing!


  • Learn how Infrared NDT works

  • Learn what type of defects you can find

  • Learn how large of an area you can inspect

  • Learn how this method compliments UT inspections

  • Learn how to save valuable inspection time

Have Questions?

Contact us and get started with your irNDT Non-destructive Testing Solution today!

Industry Specific Solutions

Active thermography is an effective inspection method for a wide variety of materials. C-CheckIR is the ideal solution for performing efficient and reliable onsite NDT inspections.

Aerospace

checkir aerospace

Modern aircraft are primarily constructed from composite materials like GRP/CFRP. Until recently, inspection equipment for these materials has been very complex. Onsite measurements have been difficult and time-consuming, requiring expert oversight. C-CheckIR, with its very simple compact design and intuitive user interface enables quick and easy detection of defects. The system easily detects water inclusions, delaminations, and bonding flaws on the aircraft fuselage, rudders, tailplane, etc. A measurement with C-CheckIR covers a surface area of 430 x 340 mm (17 x 13 in). Inspections can be performed in just a few seconds, optimizing staff costs and reducing aircraft downtimes.

Automotive

checkir automotive

Carbon-fiber reinforced plastics have become an indispensable part of Formula 1 cars. New passenger car designs are starting to include CFRPs as well. C-CheckIR is a powerful inspection system for detecting and locating defects in composite plastics like cracks, delaminations, surface wear, and signs of previous repairs. The compact design of C-CheckIR provides high mobility for onsite measurements. Whether for inspection of race cars or research on composite performance in passenger cars, C-CheckIR is the optimal solution for active thermography inspections.

Maritime

checkir maritime

Yacht and boat hulls are under heavy stress even under normal circum-stances. Eventually the stress will cause surface wear and this will allow water to penetrate beyond the protective gel coat to the composite material beneath. If water molecules reach a void in the composite, such as a pocket of unreacted resin, the water droplets will dissolve the soluble substances into a dense liquid. Osmosis will then draw more water molecules through the compromised gel coat. As the void fills, pressure builds and forms a blister that can lead to delaminations in the composite material. C-CheckIR can detect defects like delaminations and water inclusions before the structural integrity of the hull is compromised.

Wind Energy

checkir wind energy

As an energy source with a promising future, wind turbines must be able to guarantee fail-safe operation. Rotor blades are exposed to enormous forces during high speed winds. Extreme bending in a blade can lead to damaged bonds and delaminations. Maintenance work must be performed at regular intervals to be able to detect possible defects at an early state, before they are critical. C-CheckIR, as a compact and portable NDT system, is a perfect solution for detecting delaminations, cracks, and damaged bonds directly onsite.